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Three-dimensional scour simulations with a two-phase flow model
Tim Nagel
, Julien Chauchat
, Cyrille Bonamy
,
Xiaofeng Liu
, Zhen Cheng
, Tian Jian Hsu
Civil and Environmental Engineering
Institute for Computational and Data Sciences (ICDS)
Research output
:
Contribution to journal
›
Article
›
peer-review
68
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Scopus citations
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Dive into the research topics of 'Three-dimensional scour simulations with a two-phase flow model'. Together they form a unique fingerprint.
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Keyphrases
Scouring Process
100%
Shields number
100%
Two-phase Flow Model
100%
Sediment Flux
100%
Power Law
66%
Sediment Transport
66%
Bed Slope
66%
Bed Shear Stress
66%
Sediment Transport Processes
66%
Scour Hole
66%
Fluid Bed
33%
Layer Thickness
33%
Three-dimensional (3D)
33%
Shear Stress
33%
Transport Mechanism
33%
Computational Cost
33%
Stress-driven
33%
Complex Flow
33%
Flow Transport
33%
Flow Condition
33%
Local Equilibrium
33%
Flow Configuration
33%
Two-phase Flow
33%
Two-phase Model
33%
Avalanche
33%
Vertical Cylinder
33%
Eulerian-Eulerian
33%
Gravity-driven
33%
Arbitrary Geometry
33%
Transport Flux
33%
Sediment Properties
33%
Suspended Load
33%
Eulerian Approach
33%
Validation Case
33%
Unidirectional Current
33%
OpenFOAM
33%
Scour Model
33%
Angle of Repose
33%
Open Platform
33%
Bottom Shear Stress
33%
Engineering
Flow Model
100%
Two-Phase Flow
100%
Fluidized Bed
50%
Layer Thickness
50%
Transport Process
50%
Good Agreement
50%
Computational Cost
50%
Proof-of-Concept
50%
Flow Condition
50%
Phase Model
50%
Local Equilibrium
50%
Flow Configuration
50%
Simulated Result
50%
Transport Mechanism
50%
Iso
50%
Eulerian Approach
50%
Earth and Planetary Sciences
Earth Surface Sediment Transport
100%
Two Phase Flow
100%
Power Law
40%
Bedload
40%
Sediment Property
20%
Transport Process
20%
Suspended Load
20%
Fluidised Bed
20%